Self-service equipment powered by solar energy
By designing adjustable photovoltaic brackets and locking components, the problem that the photovoltaic panel support mechanism of self-service equipment could not accommodate different seasons and installation locations was solved, realizing flexible angle adjustment of the photovoltaic panels and improving the adaptability and ease of installation of the equipment.
Patent Information
- Application Number
- CN202520069112.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-13
AI Technical Summary
The photovoltaic panel support structure of existing self-service equipment needs to be customized according to installation requirements, which cannot take into account the light energy collection needs of different seasons and installation locations, resulting in high costs and poor adaptability.
A support mechanism including a support frame, a photovoltaic bracket, a positioning plate, and a locking component was designed. Through the cooperation of pins and slots, the photovoltaic bracket is allowed to rotate in different positions to adapt to different installation scenarios, thereby realizing the angle adjustment of the photovoltaic panel.
It enables flexible adjustment of photovoltaic panels in different installation scenarios, improves the adaptability and ease of installation of self-service equipment, and reduces manufacturing costs.
Smart Images

Figure CN223885139U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a self-service equipment technical field especially relates to a kind of self-service equipment powered by solar energy. BACKGROUND
[0002] Photovoltaic panel assembly is a kind of power generation device that will generate direct current when exposed to sunlight, some self-service equipment such as express delivery cabinet, self-service vending machine installed with photovoltaic panel, through photovoltaic panel to light absorption, provide power support for self-service equipment, achieve the function of cost saving. Since photovoltaic panel needs to be exposed to sunlight to generate direct current, therefore, in the north, photovoltaic panel needs to be oriented to the south. For different placement positions of self-service equipment, the installation angle of photovoltaic panel is also different, for example, when the self-service equipment is placed on the north side of the road, the photovoltaic panel needs to be oriented to the front of the express delivery cabinet, when the express delivery cabinet is placed on the south side of the road, the photovoltaic panel needs to be oriented to the back of the express delivery cabinet; in addition, even if the placement position of the self-service equipment is fixed, the light angle will change in different seasons, so the single placement position of the photovoltaic panel will lead to the situation of insufficient light energy collection in a certain season. The photovoltaic panel support mechanism of the self-service equipment in the prior art needs to be customized according to the installation requirements, and cannot meet the use requirements in different seasons, which increases the manufacturing cost and reduces the adaptability of the equipment. SUMMARY
[0003] The utility model aims at providing a kind of self-service equipment powered by solar energy to adapt to the installation requirements of self-service equipment in different installation scenarios.
[0004] The utility model provides a kind of self-service equipment powered by solar energy, the self-service equipment powered by solar energy includes:
[0005] Including cabinet, photovoltaic panel and support mechanism, the support mechanism includes:
[0006] Support frame is fixedly connected with the cabinet;
[0007] Photovoltaic support is rotatably connected with the support frame, the photovoltaic panel is installed in the photovoltaic support, the photovoltaic support can rotate relative to the support frame and have first position and second position;
[0008] Positioning disc is fixedly connected with one of the support frame and the photovoltaic support, first slot and second slot are spaced apart on the positioning disc;
[0009] A locking assembly is provided on the other one of the support frame and the photovoltaic bracket, and includes a latch. When the photovoltaic bracket is in the first position, the latch is configured to be inserted into the first slot to lock the photovoltaic bracket in the first position. When the photovoltaic bracket is in the second position, the latch is also configured to be inserted into the second slot to lock the photovoltaic bracket in the second position.
[0010] As a preferred technical solution of the self-service device powered by solar energy, the photovoltaic bracket is rotatably connected to the support frame through a damping rotating shaft.
[0011] As a preferred technical solution of the self-service device powered by solar energy, the support frame includes:
[0012] A base is detachably connected to a top wall of the cabinet.
[0013] A support pipe has a first end fixedly connected to the base.
[0014] Two fixed plates are parallel and spaced apart, and are both fixedly connected to a second end of the support pipe. The photovoltaic bracket is rotatably connected to the two fixed plates through two damping rotating shafts. The positioning disc is located between the two fixed plates and is parallel and spaced apart from the two fixed plates.
[0015] As a preferred technical solution of the self-service device powered by solar energy, when the locking assembly is provided on the photovoltaic bracket and the positioning disc is fixedly connected to the support frame:
[0016] The first slot and the second slot are both in the shape of a long strip, and a center line of the first slot and a center line of the second slot are arranged at an included angle.
[0017] The first slot and the second slot both have an opening for the latch to enter and a slot wall for preventing the latch from moving in the rotating direction of the photovoltaic bracket.
[0018] As a preferred technical solution of the self-service device powered by solar energy, the locking assembly further includes an operating member. The latch is provided on the operating member. The operating member is slidably connected to the photovoltaic bracket. The operating member can slide relative to the photovoltaic bracket to have a locking position and an unlocking position.
[0019] When the photovoltaic bracket is in the first position, when the operating member is in the locking position, the latch is inserted into the first slot. When the operating member is in the unlocking position, the latch is separated from the first slot.
[0020] When the operation member is in the locked position, the plug is inserted into the second slot; when the operation member is in the unlocked position, the plug is disengaged from the second slot.
[0021] As a preferred technical solution of the self-service equipment powered by solar energy, the locking assembly further comprises an elastic member configured to make the operation member always have a tendency to slide to the locked position.
[0022] As a preferred technical solution of the self-service equipment powered by solar energy, the photovoltaic bracket comprises a first guide slot extending along the sliding direction of the operation member, and the plug is inserted into the first guide slot.
[0023] As a preferred technical solution of the self-service equipment powered by solar energy, the photovoltaic bracket comprises a first bracket and a second bracket which are connected in a snap-fit manner and form an accommodation cavity, and the first bracket is rotatably connected to the support frame.
[0024] The operation member is located in the accommodation cavity, and the operation member can slide relative to the first bracket and the second bracket between the locked position and the unlocked position.
[0025] As a preferred technical solution of the self-service equipment powered by solar energy, the second bracket is provided with a second guide slot, and the locking assembly further comprises a guide column arranged on the operation member, and the guide column is inserted into the second guide slot, and when the operation member slides between the locked position and the unlocked position, the guide column slides along the second guide slot.
[0026] As a preferred technical solution of the self-service equipment powered by solar energy, the self-service equipment is a storage cabinet, and a maintenance opening is arranged on the top wall of the cabinet, and the maintenance opening and the support frame are arranged in a front-rear direction.
[0027] The storage cabinet further comprises a maintenance door for closing or opening the maintenance opening, and when the photovoltaic bracket is in the first position, the maintenance door is located below the photovoltaic bracket and is blocked by the photovoltaic panel, and when the photovoltaic bracket is in the second position, the maintenance door is exposed.
[0028] The self-service equipment powered by solar energy provided by the utility model has at least the following beneficial effects:
[0029] The self-service equipment powered by solar energy comprises a cabinet, a photovoltaic panel and a supporting mechanism, the supporting mechanism comprises a supporting frame, a photovoltaic support, a positioning disc and a locking assembly, the supporting frame is fixedly connected with the cabinet; the photovoltaic support is rotatably connected with the supporting frame, the photovoltaic panel is installed on the photovoltaic support, and the photovoltaic support can rotate relative to the supporting frame to have a first position and a second position; the positioning disc is fixedly connected with one of the supporting frame and the photovoltaic support, and the first slot and the second slot are arranged on the positioning disc at intervals; the locking assembly is arranged on the other one of the supporting frame and the photovoltaic support, and the locking assembly comprises a bolt, when the photovoltaic support is located at the first position, the bolt is configured to be inserted into the first slot to lock the photovoltaic support at the first position, and when the photovoltaic support is located at the second position, the bolt is also configured to be inserted into the second slot to lock the photovoltaic support at the second position. When the self-service equipment powered by solar energy provided in the embodiment of the utility model is installed in the use site, the photovoltaic support can be adjusted to the first position or the second position according to actual needs, so that the installation requirements of the self-service equipment in different installation scenes can be met. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is a structure schematic view of the self-service equipment powered by solar energy in the embodiment of the utility model;
[0031] Figure 2 It is a first partial structure schematic view (the photovoltaic support is located at the first position) of the self-service equipment powered by solar energy in the embodiment of the utility model;
[0032] Figure 3 It is a first sectional view (the photovoltaic support is located at the first position) of the supporting mechanism and the photovoltaic panel in the embodiment of the utility model;
[0033] Figure 4 It is a second sectional view (the photovoltaic support is located at the second position) of the supporting mechanism and the photovoltaic panel in the embodiment of the utility model;
[0034] Figure 5 It is a second partial structure schematic view of the self-service equipment powered by solar energy in the embodiment of the utility model;
[0035] Figure 6 It is a third partial structure schematic view of the self-service equipment powered by solar energy in the embodiment of the utility model;
[0036] Figure 7 It is a partial structure exploded view of the supporting mechanism in the embodiment of the utility model.
[0037] In the drawing:
[0038] 10, cabinet; 101, top wall; 102, cabinet body; 103, cabinet door;
[0039] 20, photovoltaic panel; 30, support mechanism; 40, fastener; 50, maintenance door; 60, mechanical lock;
[0040] 1, support frame; 11, base; 12, support tube; 121, first square tube; 122, second square tube; 123, first tube wall; 124, second tube wall; 13, fixing plate;
[0041] 2, photovoltaic support; 21, first support; 211, first side wall; 212, first connecting wall; 22, second support; 221, second side wall; 222, second connecting wall; 223, first guide slot; 224, second guide slot; 225, hanging plate; 23, accommodating cavity;
[0042] 3, positioning disc; 31, first insertion slot; 32, second insertion slot; 33, opening; 34, slot wall; 35, closed end;
[0043] 4, locking assembly; 41, bolt; 42, operating piece; 421, handle; 43, elastic piece; 44, guide column;
[0044] 5, damping rotating shaft; 6, support rotating shaft. DETAILED DESCRIPTION
[0045] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0046] In the description of the present application, it should be noted that the orientations or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions, and moreover, the first feature is "above", "above" and "above" of the second feature, which includes the first feature above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature is "below", "below" and "below" of the second feature, which includes the first feature below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0047] In the description of the utility model, it needs to explain, unless another explicit provision and limitation, term "installation", "link", "connection" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through intermediate medium, can be two elements inside the communication.For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0048] The embodiments of the utility model are described in detail below, examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary, only for explaining the utility model, and cannot be understood as limiting the utility model.
[0049] Please refer to Figures 1 to 4 The embodiment provides a self-service equipment powered by solar energy, which comprises a cabinet 10, a photovoltaic panel 20 and a supporting mechanism 30, the supporting mechanism 30 comprises a supporting frame 1, a photovoltaic support 2, a positioning disc 3 and a locking assembly 4. Wherein, the supporting frame 1 is fixedly connected with the cabinet 10;The photovoltaic support 2 is rotatably connected with the supporting frame 1, the photovoltaic panel 20 is installed on the photovoltaic support 2, the photovoltaic support 2 can rotate relative to the supporting frame 1 to have a first position and a second position;The positioning disc 3 is fixedly connected with one of the supporting frame 1 and the photovoltaic support 2, and the first slot 31 and the second slot 32 are arranged on the positioning disc 3;The locking assembly 4 is arranged on the other one of the supporting frame 1 and the photovoltaic support 2, and the locking assembly 4 comprises a latch 41, when the photovoltaic support 2 is located at the first position, the latch 41 is configured to be inserted into the first slot 31, so as to lock the photovoltaic support 2 at the first position;When the photovoltaic support 2 is located at the second position, the latch 41 is also configured to be inserted into the second slot 32, so as to lock the photovoltaic support 2 at the second position. The embodiment provides a self-service equipment powered by solar energy, when the self-service equipment is installed in the use site, the photovoltaic support 2 can be adjusted to the first position or the second position according to the actual needs, so as to adapt to the installation requirements of the self-service equipment in different installation scenes.
[0050] Wherein, the photovoltaic support 2 is rotatably connected with the supporting frame 1 through the support shaft 6, in the embodiment, the locking assembly 4 is arranged on the photovoltaic support 2, and the positioning disc 3 is fixedly connected with the supporting frame 1, in other embodiments, the locking assembly 4 can be arranged on the supporting frame 1, and the positioning disc 3 is fixedly connected with the photovoltaic support 2 according to needs.
[0051] Optionally, please refer to Figures 3 to 5In the embodiment, the first slot 31 and the second slot 32 are both in the shape of a long strip, and the center line of the first slot 31 and the center line of the second slot 32 are arranged at an angle. The first slot 31 and the second slot 32 both have an opening 33 and a slot wall 34. The opening 33 is used for the bolt 41 to enter, and the slot wall 34 is used to prevent the bolt 41 from moving in the rotation direction of the photovoltaic support 2. When the photovoltaic support 2 is in the first position, the bolt 41 can enter the first slot 31 through the opening 33 of the first slot 31, and the position of the bolt 41 in the rotation direction of the photovoltaic support 2 is limited by the slot wall 34 of the first slot 31, thereby preventing the photovoltaic support 2 from rotating relative to the support frame 1 to lock the position of the photovoltaic support 2. When the photovoltaic support 2 is in the second position, the bolt 41 can enter the second slot 32 through the opening 33 of the second slot 32, and the position of the bolt 41 in the rotation direction of the photovoltaic support 2 is limited by the slot wall 34 of the second slot 32, thereby preventing the photovoltaic support 2 from rotating relative to the support frame 1 to lock the position of the photovoltaic support 2. Preferably, the direction in which the bolt 41 enters the first slot 31 through the opening 33 of the first slot 31 and the direction in which the bolt 41 enters the second slot 32 through the opening 33 of the second slot 32 are both parallel to the end face of the positioning disc 3.
[0052] As one of the alternatives, the first slot 31 and the second slot 32 are both in the shape of a round hole, the center line of the first slot 31 and the center line of the second slot 32 are both parallel, and both are perpendicular to the end face of the positioning disc 3. When the photovoltaic support 2 is in the first position, the bolt 41 can be inserted into the first slot 31, and when the photovoltaic support 2 is in the second position, the bolt 41 can be inserted into the second slot 32. Preferably, the bolt 41 is slidingly arranged on the photovoltaic support 2, and the bolt 41 can slide relative to the photovoltaic support 2 to have an extended position and a retracted position. When the bolt 41 is in the extended position, the bolt 41 is inserted into the first slot 31 or the second slot 32, and when the bolt 41 is in the retracted position, the bolt 41 is separated from the first slot 31 or the second slot 32 and can abut against the end face of the positioning disc 3. Further preferably, the locking assembly 4 further comprises a compression spring connected between the photovoltaic support 2 and the bolt 41. The spring is configured to make the bolt 41 always have a tendency to move to the extended position. Further preferably, the bolt 41 is a ball pin. When the photovoltaic support 2 is rotated by an external force when the bolt 41 is in the extended position, the bolt 41 can be separated from the first slot 31 or the second slot 32 and be in the retracted position.
[0053] Alternatively, please refer to Figures 3 to 5In the embodiment, the angle between the center lines of the first slot 31 and the second slot 32 is 90 degrees. When the photovoltaic support 2 is in the first position, the photovoltaic panel 20 faces the front of the cabinet 10. When the photovoltaic support 2 is in the second position, the photovoltaic panel 20 faces the back of the cabinet 10. In this way, when the self-service equipment is placed on the south side of the road, the front of the self-service equipment faces north. At this time, the photovoltaic support 2 can be placed in the second position, the photovoltaic panel 20 faces south to ensure sufficient light, and the bolt 41 is inserted into the second slot 32 to lock the position of the photovoltaic support 2. When the self-service equipment is placed on the north side of the road, the front of the self-service equipment faces south. At this time, the photovoltaic support 2 can be placed in the first position, and the photovoltaic panel 20 also faces south to ensure sufficient light, and the bolt 41 is inserted into the first slot 31 to lock the position of the photovoltaic support 2. In other embodiments, the angle between the center lines of the first slot 31 and the second slot 32 can also be set to 60 degrees, 45 degrees, 30 degrees, etc. according to needs, to adapt to the light angle requirements of different seasons and different installation locations. Therefore, the photovoltaic panel 20 of the self-service equipment provided in the embodiment can adapt to the installation requirements of different installation scenarios, has strong adaptability, and is easy to install.
[0054] Optionally, the positioning disc 3 further comprises a third slot, the center line of the third slot is arranged at an angle with the center line of the first slot 31 and the center line of the second slot 32, the bolt 41 can be inserted into the third slot, and the photovoltaic support 2 can rotate relative to the support frame 1 and further has a third position. When the photovoltaic support 2 is in the third position, the bolt 41 is further configured to be inserted into the third slot to lock the photovoltaic support 2 in the third position.
[0055] It should be noted that the number of third slots can be set to one or multiple, and the more the number of third slots, the more positions of the photovoltaic support 2 can be locked by the bolt 41, and thus the more installation angles of the photovoltaic panel 20.
[0056] Optionally, please refer to Figures 2 to 4 , and Figure 6 , and Figure 7The locking assembly 4 further comprises an operating member 42, and the pin 41 is arranged on the operating member 42. The operating member 42 is in sliding connection with the photovoltaic bracket 2, and the operating member 42 can slide relative to the photovoltaic bracket 2 to have a locking position and an unlocking position. When the photovoltaic bracket 2 is located at the first position, when the operating member 42 is located at the locking position, the pin 41 is inserted into the first slot 31 through the opening 33 of the first slot 31, and when the operating member 42 is located at the unlocking position, the pin 41 is separated from the first slot 31. When the photovoltaic bracket 2 is located at the second position, when the operating member 42 is located at the locking position, the pin 41 is inserted into the second slot 32 through the opening 33 of the second slot 32, and when the operating member 42 is located at the unlocking position, the pin 41 is separated from the second slot 32. In this way, when the photovoltaic bracket 2 is located at the first position, if the operating member 42 is slid to the locking position, the pin 41 is inserted into the first slot 31 through the opening 33 of the first slot 31 to lock the relative position of the photovoltaic bracket 2 and the support frame 1, and if the operating member 42 is slid to the unlocking position, the pin 41 is separated from the first slot 31 to unlock the relative position of the photovoltaic bracket 2 and the support frame 1. When the photovoltaic bracket 2 is located at the second position, if the operating member 42 is slid to the locking position, the pin 41 is inserted into the second slot 32 through the opening 33 of the second slot 32 to lock the relative position of the photovoltaic bracket 2 and the support frame 1, and if the operating member 42 is slid to the unlocking position, the pin 41 is separated from the second slot 32 to unlock the relative position of the photovoltaic bracket 2 and the support frame 1. Preferably, in the embodiment, the sliding direction of the operating member 42 is perpendicular to the extending direction of the pin 41, and the extending direction of the pin 41 is perpendicular to the end face of the positioning disc 3.
[0057] Optionally, referring to Figure 7 , the operating member 42 is in the shape of a strip, the pin 41 is fixedly arranged at a first end of the operating member 42, and a second end of the operating member 42 extends to the edge of the photovoltaic panel 20 and forms a handle 421. The handle 421 is used for a user to hold and pull the operating member 42 to facilitate the sliding of the operating member 42 to the locking position or the unlocking position, so that the pin 41 is inserted into or separated from the first slot 31 or the second slot 32.
[0058] Optionally, referring to Figure 3 , Figure 4 and Figure 7 , the locking assembly 4 further comprises an elastic member 43, and the elastic member 43 is configured to make the operating member 42 always have a tendency to slide to the locking position. By arranging the elastic member 43, the pin 41 can be prevented from being separated from the first slot 31 or the second slot 32, and the reliability of the position locking of the photovoltaic bracket 2 can be improved. Preferably, the elastic member 43 is a tension spring, and the tension spring is connected between the pin 41 and the photovoltaic bracket 2. In other embodiments, the elastic member 43 can also be arranged as a compression spring or the like according to needs.
[0059] Optionally, referring to Figure 3 , Figure 4、 Figure 6 and Figure 7 The plug 41 is cylindrical, the first slot 31 and the second slot 32 each have a closed end 35 opposite the opening 33, and the closed end 35 of the first slot 31 and the second slot 32 is arc-shaped, the radius of the arc matches the radius of the plug 41; the elastic force of the elastic member 43 is configured to have a tendency to abut against the closed end 35 of the first slot 31 when the plug 41 is inserted into the first slot 31, and to have a tendency to abut against the closed end 35 of the second slot 32 when the plug 41 is inserted into the second slot 32; in this way, under the elastic force of the elastic member 43, when the plug 41 is locked in the first position, the cylindrical plug 41 abuts against the arc-shaped closed end 35 of the first slot 31, and the cooperation is more stable. Preferably, the distance between the closed end 35 of the first slot 31 and the second slot 32 and the rotation center of the photovoltaic bracket 2 is the same.
[0060] Optionally, please refer to Figure 6 and Figure 7 The photovoltaic bracket 2 comprises a first guide slot 223 extending along the sliding direction of the operating member 42, and the plug 41 is inserted into the first guide slot 223. In this way, by arranging the first guide slot 223 on the photovoltaic bracket 2, the movement path of the plug 41 is limited, so that the plug 41 can be reliably inserted into the first slot 31 or the second slot 32.
[0061] Optionally, please continue to refer to Figure 6 and Figure 7, the photovoltaic support 2 comprises a first support 21 and a second support 22, the first support 21 and the second support 22 are connected by buckling and form a containing cavity 23, the first support 21 is rotatably connected with the support frame 1; the operating member 42 is located in the containing cavity 23, and the operating member 42 can slide relative to the first support 21 and the second support 22 between the locked position and the unlocked position. In this way, the containing cavity 23 is formed by buckling connection of the first support 21 and the second support 22, and the operating member 42 is contained in the containing cavity 23, so that the operating member 42 is not disturbed by external objects, and reliable sliding of the operating member 42 between the locked position and the unlocked position is ensured. Specifically, in the embodiment, the first support 21 comprises two first side walls 211 arranged at a distance from each other and a first connecting wall 212 connected between the two first side walls 211, the second support 22 comprises two second side walls 221 arranged at a distance from each other and a second connecting wall 222 connected between the two second side walls 221, the two second side walls 221 are connected perpendicularly to the first connecting wall 212, and the second connecting wall 222 is arranged at a distance from the first connecting wall 212, the first connecting wall 212, the second connecting wall 222 and the two second side walls 221 together form the containing cavity 23, and the first guide slot 223 is arranged on the second support 22. Preferably, the first support 21 is fixedly connected with the photovoltaic panel 20. In other embodiments, the second support 22 can also be fixedly connected with the photovoltaic panel 20.
[0062] Optionally, please continue to refer to Figure 6 and Figure 7 , the second support 22 is provided with a second guide slot 224, the locking assembly 4 further comprises a guide column 44, the guide column 44 is arranged on the operating member 42, and the guide column 44 is inserted into the second guide slot 224, when the operating member 42 slides between the locked position and the unlocked position, the guide column 44 slides along the second guide slot 224. In this way, the movement direction of the operating member 42 is limited by the insertion and cooperation of the guide column 44 and the second guide slot 224. Preferably, the extension direction of the first guide slot 223 and the extension direction of the second guide slot 224 are parallel, and the first guide slot 223 and the second guide slot 224 both penetrate through the two second side walls 221, so that the two second side walls 221 not only limit the movement direction of the bolt 41 and the movement direction of the guide column 44, but also support the guide column 44 and the bolt 41, so as to ensure the structural strength of the locking assembly 4, and further ensure that the photovoltaic support 2 is reliably locked in the first position or the second position.
[0063] Optionally, please refer to Figure 7The second bracket 22 also includes a hanging plate 225, with both ends of a tension spring connected to the hanging plate 225 and the pin 41, respectively. The tension of the spring causes the operating member 42 to always tend to slide towards the locking position. Specifically, the hanging plate 225 is located within the receiving cavity 23, and the hanging plate 225 is connected to the second connecting wall 222. Preferably, both the first bracket 21 and the second bracket 22 are integrally formed by a stamping and bending process.
[0064] Alternatively, please refer to Figure 2 , Figures 5 to 7 The photovoltaic bracket 2 is rotatably connected to the support frame 1 via a damping shaft 5. Under the influence of gravity of the photovoltaic bracket 2 and the photovoltaic panel 20, the photovoltaic bracket 2 always tends to rotate around the rotation center. The damping shaft 5 can increase the resistance when the photovoltaic bracket 2 rotates relative to the support frame 1, thereby reducing the force on the pin 41 when locking the position of the photovoltaic bracket 2.
[0065] Alternatively, please refer to Figures 2 to 5 The support frame 1 also includes a base 11, a support tube 12, and two fixing plates 13. The base 11 is detachably connected to the top wall 101 of the cabinet 10; the first end of the support tube 12 is fixedly connected to the base 11; both fixing plates 13 are fixedly connected to the second end of the support tube 12, and the two fixing plates 13 are parallel and spaced apart. The photovoltaic bracket 2 is rotatably connected to the two fixing plates 13 via two damping shafts 5. The positioning plate 3 is located between the two fixing plates 13, and is parallel and spaced apart from both fixing plates 13. Specifically, in this embodiment, two first sidewalls 211 are correspondingly arranged with the two fixing plates 13, and each first sidewall 211 is rotatably connected to the corresponding fixing plate 13 via a damping shaft 5. This arrangement, with damping provided by the two damping shafts 5, further reduces the force exerted on the pin 41 when locking the photovoltaic bracket 2. Furthermore, with the positioning plate 3 located between the two fixing plates 13, the pin 41 can more reliably lock the position of the photovoltaic bracket 2 when it is inserted into the positioning plate 3. Preferably, in this embodiment, the support tube 12 is a square tube. Specifically, the square tube includes two first tube walls 123 spaced apart from each other and two second tube walls 124 connected between the two first tube walls 123 and spaced apart. Two fixing plates 13 are fixedly connected to the two first tube walls 123 respectively, and the positioning plate 3 is fixedly connected to the two second tube walls 124. In other embodiments, the support tube 12 can also be configured as a round tube or the like, as needed.
[0066] Optionally, please refer to again Figures 2 to 5The square tube includes a first square tube 121 and a second square tube 122 connected at an angle, the top of the first square tube 121 is connected with the positioning disc 3 and the two fixing plates 13, the bottom of the second square tube 122 is connected with the base 11, and the base 11 is connected with the top wall 101. The square tube is hollow, so that the connecting wire of the photovoltaic panel 20 can pass into the cabinet 10 from inside the square tube. Preferably, the first square tube 121 and the second square tube 122 are arranged at an angle, which improves the structural strength of the support frame 1.
[0067] Optionally, please refer to Figure 1 、 Figure 2 and Figure 5 , the top wall 101 is provided with four fixing holes arranged in a square; the base 11 is correspondingly provided with four through holes, and four fasteners 40 are respectively screwed through the four through holes and the four fixing holes. Since the four fixing holes are arranged in a square, the base 11 of the support frame 1 has four installation positions when being installed with the top wall 101 of the cabinet 10. When the support frame 1 is installed, the photovoltaic panel 20 can be directed to the front side, the left side, the rear side or the right side of the cabinet 10, taking the front surface of the cabinet 10 as the reference. For example, when the self-service equipment is placed on the east side of the road, the photovoltaic panel 20 can be directed to the right side of the cabinet 10 when the support frame 1 is installed, and then the photovoltaic support 2 is locked in the second position to ensure that the photovoltaic panel 20 is directed to the south. Therefore, the photovoltaic panel 20 of the self-service equipment can meet the installation requirements of more scenes, and has higher adaptability.
[0068] It should be noted that the number of through holes is not limited to four, and in other embodiments, the number of through holes can be set to other numbers as needed, but the multiple through holes need to be arranged in a regular polygon.
[0069] Optionally, please refer to Figure 1 、 Figure 2 and Figure 5 , the self-service equipment is a storage cabinet, the top wall 101 of the cabinet 10 is provided with a maintenance opening, and the maintenance opening is spaced apart from the support frame 1 in the front-rear direction (as indicated by the direction of arrow ab in Figure 1 and Figure 2 ); the storage cabinet further includes a maintenance door 50 for closing or opening the maintenance opening. When the photovoltaic support 2 is in the first position, the maintenance door 50 is located below the photovoltaic support 2 and is blocked by the photovoltaic panel 20. When the photovoltaic support 2 is in the second position, the maintenance door 50 is exposed. In this way, when the maintenance door 50 needs to be opened, the photovoltaic support 2 in the first position can be rotated to the second position, so that the maintenance door 50 is exposed. Preferably, the self-service equipment further includes a mechanical lock 60 for locking the relative position of the maintenance door 50 and the top wall 101. In other embodiments, the self-service equipment can also be a vending machine or the like.
[0070] Optionally, please refer to Figure 1When the self-service equipment is a locker, the locker also includes multiple locker doors 103 and multiple electronic locks. The locker body 102 has a maintenance compartment and multiple storage compartments, each of which has an opening. The multiple openings are arranged vertically (e.g., Figure 1 The cabinets are arranged sequentially (in the direction indicated by the middle arrow cd), with multiple cabinet doors 103 corresponding to multiple openings. Each cabinet door 103 is used to open and close the corresponding opening. Multiple electronic locks are installed on the cabinet body 102, with each electronic lock corresponding to a cabinet door 103. Each electronic lock is used to lock the position of the cabinet door 103 when the corresponding opening is closed. The maintenance compartment is located above the multiple storage compartments, and the maintenance opening is connected to the maintenance compartment. The storage cabinet also includes an emergency pull rod, which extends vertically and its top end extends into the maintenance compartment. Each electronic lock has a locking hook and an emergency rod that is drivenly connected to the locking hook. The locking hook is used to engage with the latch on the cabinet door 103 to lock the position of the cabinet door 103, and the emergency rod is drivenly connected to the emergency pull rod. When the electric lock cannot be unlocked due to unexpected circumstances such as power failure, the maintenance door 50 can be opened and the emergency lever can be pulled. The emergency lever will drive the emergency levers of multiple electric locks to move, and the emergency lever will drive the corresponding lock hooks to move and separate from the lock latches, so as to unlock each cabinet door 103.
[0071] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A self-service apparatus powered by solar energy, characterized by, The utility model relates to a photovoltaic support mechanism, comprising a cabinet (10), a photovoltaic panel (20) and a support mechanism (30), the support mechanism (30) comprises: A support frame (1) is fixedly connected with the cabinet (10); A photovoltaic support (2) is rotatably connected with the support frame (1), the photovoltaic panel (20) is installed on the photovoltaic support (2), and the photovoltaic support (2) can rotate relative to the support frame (1) to have a first position and a second position; A positioning disc (3) is fixedly connected with one of the support frame (1) and the photovoltaic support (2), and first and second insertion grooves (31, 32) are spaced apart on the positioning disc (3); A locking assembly (4) is arranged on the other of the support frame (1) and the photovoltaic support (2), and the locking assembly (4) comprises a latch (41), when the photovoltaic support (2) is in the first position, the latch (41) is configured to be inserted into the first insertion groove (31) to lock the photovoltaic support (2) in the first position, and when the photovoltaic support (2) is in the second position, the latch (41) is also configured to be inserted into the second insertion groove (32) to lock the photovoltaic support (2) in the second position.
2. The self-service apparatus powered by solar energy for use according to claim 1, characterized in that, The photovoltaic support (2) is rotatably connected with the support frame (1) through a damping rotating shaft (5).
3. The self-service apparatus powered by solar energy for use according to claim 2, characterized in that, The support frame (1) comprises: A base (11) is detachably connected with the top wall (101) of the cabinet (10); A support pipe (12) is fixedly connected with the base (11) at a first end; Two fixed plates (13) are parallel and spaced apart, and both are fixedly connected with a second end of the support pipe (12), the photovoltaic support (2) is rotatably connected with the two fixed plates (13) through two damping rotating shafts (5), the positioning disc (3) is located between the two fixed plates (13), and the positioning disc (3) is parallel and spaced apart from the two fixed plates (13).
4. The self-service apparatus powered by solar energy according to claim 1, wherein, When the locking assembly (4) is arranged on the photovoltaic support (2), and the positioning disc (3) is fixedly connected with the support frame (1): Both the first and second insertion grooves (31, 32) are long strips, and the center lines of the first and second insertion grooves (31, 32) are arranged at an angle; Both the first and second insertion grooves (31, 32) have an opening (33) for the latch (41) to enter and a groove wall (34) for preventing the latch (41) from moving in the rotating direction of the photovoltaic support (2).
5. The self-service apparatus powered by solar energy for use according to claim 4, characterized in that, The locking assembly (4) further comprises an operating member (42), the latch (41) is arranged on the operating member (42), the operating member (42) is slidably connected with the photovoltaic support (2), and the operating member (42) can slide relative to the photovoltaic support (2) to have a locking position and an unlocking position. When the photovoltaic support (2) is in the first position, the plug (41) is inserted into the first slot (31) when the operating member (42) is in the locked position, and the plug (41) is separated from the first slot (31) when the operating member (42) is in the unlocked position. When the photovoltaic support (2) is in the second position, the plug (41) is inserted into the second slot (32) when the operating member (42) is in the locked position, and the plug (41) is separated from the second slot (32) when the operating member (42) is in the unlocked position.
6. The self-service apparatus powered by solar energy for use according to claim 5, characterized in that, The locking assembly (4) further comprises an elastic member (43) configured to make the operating member (42) always have a tendency to slide to the locked position.
7. The self-service apparatus powered by solar energy according to claim 5, wherein, The photovoltaic support (2) comprises a first guide slot (223) extending along the sliding direction of the operating member (42), and the plug (41) is inserted into the first guide slot (223).
8. The self-service apparatus powered by solar energy according to claim 5, wherein, The photovoltaic support (2) comprises a first support (21) and a second support (22) which are connected in a clamping manner and form an accommodating cavity (23), and the first support (21) is rotatably connected to the support frame (1). The operating member (42) is located in the accommodating cavity (23), and the operating member (42) can slide relative to the first support (21) and the second support (22) between the locked position and the unlocked position.
9. The self-service apparatus powered by solar energy for use according to claim 8, characterized in that, The second support (22) is provided with a second guide slot (224), and the locking assembly (4) further comprises a guide column (44) arranged on the operating member (42), and the guide column (44) is inserted into the second guide slot (224), and the guide column (44) slides along the second guide slot (224) when the operating member (42) slides between the locked position and the unlocked position.
10. A self-service apparatus powered by solar energy according to any one of claims 1-9, characterized in that, The self-service equipment is a storage cabinet, and a maintenance opening is arranged on a top wall (101) of the cabinet (10), and the maintenance opening and the support frame (1) are arranged in a front-rear direction. The storage cabinet further comprises a maintenance door (50) for closing or opening the maintenance opening, and when the photovoltaic support (2) is in the first position, the maintenance door (50) is located below the photovoltaic support (2) and is shielded by the photovoltaic panel (20), and when the photovoltaic support (2) is in the second position, the maintenance door (50) is exposed.